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111.
为探讨楸树无性系对氮素的吸收、分配及利用特性,以2年生楸树无性系015-1、1-3、7080、1-4和004-1组培苗为试验材料,应用15N示踪技术对楸树无性系进行施肥试验。结果表明,5个楸树无性系氮肥的吸收率、利用率及分配率具有较强的一致性,氮肥利用率介于27.14%~31.24%之间。楸树无性系根和叶的肥料氮比例(Ndff)明显大于茎,楸树无性系根和叶对氮肥的竞争力较强,茎对氮肥的竞争力最弱。015-1茎部氮素分配率及无性系7080根部氮素分配率明显高于其他4个无性系;氮素分配率在各个器官中差异显著,叶片氮素的分配率最高,总体趋势为叶根茎。本研究结果为楸树氮肥的合理施用提供了理论依据。 相似文献
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WU Xue-lei CAI Yao-wu ZHUANG Zhi-zhong CHEN Yuan-jing GUO Ren-jie ZHENG Mao-song 《园艺学报》2015,31(12):2169-2175
AIM: To explore the mechanism by which over-expression of enhancer of zeste homolog 2 (EZH2) in a panel of gastric cancer cell lines is involved in tumorigenesis of gastric cancer. METHODS: Real-time PCR and Western blot were employed to examine the mRNA and protein levels of EZH2, respectively. MTS assay, cell migration and soft agar assay were performed to investigate the role of EZH2 in the regulation of stomach cancer behaviors. The effect of EZH2 on NF-κB target gene expression was determined by Luciferase reporter and real-time PCR. Co-immunoprecipitation was used to analyze the interaction of EZH2 and p65 in HEK293T cells. RESULTS: The expression levels of EZH2 were significantly increased in the gastric cancer cells compared with normal gastric epithelial cells. Pharmacological inhibition by DZNep or knockdown of EZH2 significantly compromised AGS and SNU-16 cell activity, cell migration and anchorage-independent cell growth. Moreover, siRNA knockdown of EZH2 impaired NF-κB downstream targets, such as IL-8, CXCL5 and CCL20. In addition, the interaction of EZH2 and p65 was detected. CONCLUSION: EZH2 mediates the growth of gastric cancer cells through the regulation of NF-κB downstream gene expression. 相似文献
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Soil compaction, especially subsoil compaction, in agricultural fields has increased due to widespread use of heavy machines and intensification of vehicular traffic. Subsoil compaction changes the relative distribution of roots between soil layers and may restrict root development to the upper part of the soil profile, limiting water and mineral availability. This study investigated the direct effects of inter-row subsoiling, biological subsoiling and a combination of these two methods on soil penetration resistance, root length density, nitrogen uptake and yield. In field experiments with potatoes in 2013 and 2014, inter-row subsoiling (subsoiler) and biological subsoiling (preceding crops) were studied as two potential methods to reduce soil penetration resistance. Inter-row subsoiling was carried out post planting and the preceding crops were established one year, or in one case two years, prior to planting. Soil resistance was determined with a penetrometer three weeks after the potatoes were planted and root length density was measured after soil core sampling 2 months after emergence. Nitrogen uptake was determined in haulm (at haulm killing) and tubers (at harvest). Inter-row subsoiling had the greatest effect on soil penetration resistance, whereas biological subsoiling showed no effects. Root length density (RDL) in the combined treatment was higher than in the separate inter-row and biological subsoiling treatments and the control, whereas for the separate inter-row and biological subsoiling treatments, RLD was higher than in the control. Nitrogen uptake increased with inter-row subsoiling and was significantly higher than in the biological subsoiling and control treatments. However, in these experiments with a good supply of nutrients and water, no yield differences between any treatments were observed. 相似文献
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本文以白羊草(Bothriochloa ischaemum)为材料,利用其目前已有的转录组序列,通过搜索、比对、功能域多态性分析、进化树构建和基因表达分析等手段,对白羊草R2R3-MYB型转录因子进行挖掘和干旱胁迫下的表达模式分析。结果从白羊草挖掘出43个R2R3-MYB转录因子,它们具有高度保守的[W]-X(19)-[W]-X(19)-[W]-X(n)-[W]-X(18)-[W]结构,主要参与生长发育、次生代谢和逆境响应等生物过程。通过进一步的分析,本研究筛选出8个可能参与干旱胁迫响应的R2R3-MYB转录因子。这为白羊草R2R3-MYB基因的功能研究和开发利用奠定了基础。 相似文献
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β-胡萝卜素羟化酶(beta-carotene hydroxylase,BCH)是植物类胡萝卜素合成代谢中的关键限速酶,为获得烟草β-胡萝卜素羟化酶2(NtBCH2)基因序列,采用同源克隆法从烟草中分离NtBCH2的基因组DNA序列,基因登录号为JX101477。结果表明:1)同源克隆法从烟草中克隆出NtBCH2基因,NtBCH2基因组DNA全长2131bp,cDNA为1 083bp,含7个外显子和6个内含子。2)NtBCH2蛋白有309个氨基酸,分子量为34.79kD,具有7个糖基化位点,11个磷酸化位点,4个跨膜域。3)系统发育树与BLAST分析表明,NtBCH2是番茄的SlBCH和辣椒CaBCH2的同源基因;GENEVESTIGATOR数据库芯片结果表明,NtBCH2在幼嫩的茎和子叶中表达量最高。 相似文献